Estimativa da Umidade do Solo por Refletometria GNSS: uma Revisão Conceitual

Q4 Social Sciences Revista Brasileira de Cartografia Pub Date : 2021-04-06 DOI:10.14393/RBCV73N2-55033
Jorge Felipe Euriques, C. Krueger, W. C. Machado, L. F. Sapucci, Felipe Geremia-Nievinski
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Abstract

Soil moisture monitoring enables efficient management and use of water resources, having great importance for several purposes, such as: monitoring of risk areas; delimitation of areas susceptible to flooding; geotechnical activities; and in agriculture development. GNSS Reflectometry (GNSS-R) is a scientific and technological development that allows one to perform proximal or remote sensing, depending on the antenna height concerning the surface, by means of navigation satellites. This method exploits GNSS signals indirectly reaching a receiver antenna after they are reflected on the surrounding surfaces. In this method, direct and indirect GNSS signals that reach the receiving antenna are exploited, after reflection on the surfaces existing around the antenna. The combination of these two signals causes the multipath effect, which affects GNSS observable and deteriorates positioning. On the other hand, when interacting with these reflecting surfaces one can estimate their properties. One of the main advantages of GNSS-R, when compared with the conventional methods, is the intermediate coverage area, as well as, the use of the well-defined structure of GNSS systems that guarantee appropriate temporal resolution. The scope of this paper is to present a conceptual review of GNSS-R applied to soil moisture monitoring.
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全球导航卫星系统反射法估算土壤湿度:概念综述
土壤湿度监测能够有效管理和利用水资源,对以下几个目的具有重要意义:监测风险地区;划定易受洪水影响的地区;岩土工程活动;以及农业发展。GNSS反射测量(GNSS-R)是一项科学和技术发展,使人们能够通过导航卫星根据与表面有关的天线高度进行近端或遥感。该方法利用GNSS信号在周围表面上反射后间接到达接收器天线。在该方法中,在天线周围存在的表面上反射之后,利用到达接收天线的直接和间接GNSS信号。这两个信号的组合会导致多径效应,从而影响GNSS的可观测性并恶化定位。另一方面,当与这些反射表面相互作用时,可以估计它们的性质。与传统方法相比,GNSS-R的主要优势之一是中等覆盖区域,以及使用了保证适当时间分辨率的全球导航卫星系统的明确结构。本文的范围是介绍GNSS-R应用于土壤水分监测的概念综述。
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来源期刊
Revista Brasileira de Cartografia
Revista Brasileira de Cartografia Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
0.70
自引率
0.00%
发文量
37
审稿时长
16 weeks
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